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皮质触摸的计算机模拟

Cortical Representation of Touch in Silico.

机构信息

Department of Biology, University of Leipzig, Leipzig, Germany.

Donders Institute for Brain, Cognition, and Behaviour, Radboud University, Nijmegen, the Netherlands.

出版信息

Neuroinformatics. 2022 Oct;20(4):1013-1039. doi: 10.1007/s12021-022-09576-5. Epub 2022 Apr 29.

Abstract

With its six layers and ~ 12,000 neurons, a cortical column is a complex network whose function is plausibly greater than the sum of its constituents'. Functional characterization of its network components will require going beyond the brute-force modulation of the neural activity of a small group of neurons. Here we introduce an open-source, biologically inspired, computationally efficient network model of the somatosensory cortex's granular and supragranular layers after reconstructing the barrel cortex in soma resolution. Comparisons of the network activity to empirical observations showed that the in silico network replicates the known properties of touch representations and whisker deprivation-induced changes in synaptic strength induced in vivo. Simulations show that the history of the membrane potential acts as a spatial filter that determines the presynaptic population of neurons contributing to a post-synaptic action potential; this spatial filtering might be critical for synaptic integration of top-down and bottom-up information.

摘要

一个皮质柱有六层,大约有 12000 个神经元,是一个复杂的网络,其功能很可能超过其组成部分的总和。要对其网络组件的功能进行特征描述,就需要超越对一小群神经元的神经活动进行暴力调制的方法。在这里,我们在重建了躯体感觉皮层的桶状皮层后,引入了一个开源的、受生物启发的、计算效率高的颗粒和超颗粒层的感觉皮层网络模型。将网络活动与经验观察进行比较表明,该网络模型复制了活体中已知的触摸表示和胡须缺失诱导的突触强度变化的特性。模拟表明,膜电位的历史可以作为一个空间滤波器,决定产生突触后动作电位的前突神经元的突触前群体;这种空间滤波可能对自上而下和自下而上信息的突触整合至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ba4e/9588483/c37eff3303b1/12021_2022_9576_Fig1_HTML.jpg

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